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Solvent Bonding for Fabrication of PMMA and COP Microfluidic Devices

机译:用于制造PMMA和COP微流体装置的溶剂键合

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摘要

Thermoplastic microfluidic devices offer many advantages over those made from silicone elastomers, but bonding procedures must be developed for each thermoplastic of interest. Solvent bonding is a simple and versatile method that can be used to fabricate devices from a variety of plastics. An appropriate solvent is added between two device layers to be bonded, and heat and pressure are applied to the device to facilitate the bonding. By using an appropriate combination of solvent, plastic, heat, and pressure, the device can be sealed with a high quality bond, characterized as having high bond coverage, bond strength, optical clarity, durability over time, and low deformation or damage to microfeature geometry. We describe the procedure for bonding devices made from two popular thermoplastics, poly(methyl-methacrylate) (PMMA), and cyclo-olefin polymer (COP), as well as a variety of methods to characterize the quality of the resulting bonds, and strategies to troubleshoot low quality bonds. These methods can be used to develop new solvent bonding protocols for other plastic-solvent systems.
机译:热塑性微流体装置比由硅酮弹性体制成的装置具有许多优势,但是必须为每种感兴趣的热塑性塑料开发粘合程序。溶剂粘合是一种简单而通用的方法,可用于由多种塑料制造器件。在要结合的两个器件层之间添加适当的溶剂,然后对器件施加热量和压力以促进结合。通过使用溶剂,塑料,热量和压力的适当组合,可以通过高质量的粘合来密封该设备,其特征是具有高粘合覆盖率,粘合强度,光学透明度,经久耐用性以及低变形或对微特征的损坏几何。我们描述了由两种流行的热塑性塑料,聚甲基丙烯酸甲酯(PMMA)和环烯烃聚合物(COP)制成的粘合装置的程序,以及表征所得粘合质量的各种方法和策略解决低质量的债券。这些方法可用于为其他塑料溶剂系统开发新的溶剂键合方案。

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